Title: A Green Chemistry Module
1A Green Chemistry Module
Nucleophilic Aromatic Substitution
Presidential Green Chemistry Challenge Award
Elimination of Chlorine in the Synthesis of
4-Aminodiphenylamine. A New Process Which
Utilizes Nucleophilic Aromatic Substitution for
Hydrogen
2SNAr Mechanism - addition / elimination
3Benzyne Mechanism - elimination / addition
Step-wise formation of Benzyne
4Evidence for the Benzyne Mechanism
Trapping in Diels/Alder Reaction
Substrate Modification absence of a hydrogens
Isotopic Labeling
5SN1 Mechanism
6SNR1 Mechanism
7Brown Chemistry Route to 4-ADPA
8Atom Economy of the Traditional Chemistry
9Brown Chemistry
Nucleophilic Aromatic Substitution for Chlorine
- Large amount of chlorine
- storage
- handling
- Waste stream components
- inorganic salts
- organics
- Large amounts of water consumed
- Heavy metal catalyst
10Nucleophilic Aromatic Substitution for Hydrogen
General Mechanism
11Flexsys Route to 4-ADPA
Base-Promoted Coupling Reaction
12Flexsys - Anaerobic Oxidation to 4-NDPA
13Flexsys - Intermolecular Oxidation Pathway
14Atom Economy of the Flexsys Chemistry
15Green Chemistry Advantages for
Nucleophilic Aromatic Substitution for
Hydrogen
- Reduction in chemical waste generation
- elimination of
- 74 of organic waste
- 99 of inorganic waste
- Eliminates use of chlorine
- Reduction in waste water
- more than 97 savings
- Eliminates use of xylene
- a SARA chemical
- Improves process safety
- lower reaction temperatures